Leonetti Carlo, Amodei Sarah, D'Angelo Carmen, Rizzo Angela, Benassi Barbara, Antonelli Anna, Elli Raffaella, Stevens Malcolm F G, D'Incalci Maurizio, Zupi Gabriella, Biroccio Annamaria
Experimental Chemotherapy Laboratory, Centro di Ricerca Sperimentale, Regina Elena Cancer Institute, University La Sapienza, Roma, Italy.
Mol Pharmacol. 2004 Nov;66(5):1138-46. doi: 10.1124/mol.104.001537. Epub 2004 Aug 10.
This study had two goals: 1) to evaluate the biological effect of the novel pentacyclic acridine 3,11-difluoro-6,8,13-trimethyl-8H-quino[4,3,2-kl]acridinium methosulfate (RHPS4) on human melanoma lines possessing long telomeres, and 2) to elucidate the relationship between G-quadruplex-based telomerase inhibitor-induced cellular effects and telomere length/dysfunction. The cellular pharmacological effects of RHPS4 have been evaluated by treating melanoma lines with increasing concentrations of RHPS4. A dose-dependent inhibition of cell proliferation was observed in all the lines during short-term treatment. Flow cytometric analysis demonstrated that RHPS4 induced a dose-dependent accumulation of cells in the S-G(2)/M phase of cell cycle. The RHPS4-induced cell cycle alteration was irreversible even at low doses, and the cells died from apoptosis. At high RHPS4 concentration, apoptosis was accompanied by the induction of a senescence phenotype: large cell size, vacuolated cytoplasm, and beta-galactosidase activity. The short-term biological activity of RHPS4 was not caused by telomere shortening, but it was associated with telomere dysfunction, in terms of presence of telomeric fusions, polynucleated cells, and typical images of telophase bridge. In conclusion, our results demonstrate that the G-quadruplex ligand RHPS4 can function in a telomere length-independent manner through its ability to cause telomere-capping alteration.
1)评估新型五环吖啶3,11 - 二氟 - 6,8,13 - 三甲基 - 8H - 喹啉并[4,3,2 - kl]吖啶鎓甲基硫酸盐(RHPS4)对具有长端粒的人黑色素瘤细胞系的生物学效应;2)阐明基于G - 四链体的端粒酶抑制剂诱导的细胞效应与端粒长度/功能障碍之间的关系。通过用浓度递增的RHPS4处理黑色素瘤细胞系来评估RHPS4的细胞药理作用。在短期处理期间,在所有细胞系中均观察到细胞增殖的剂量依赖性抑制。流式细胞术分析表明,RHPS4诱导细胞在细胞周期的S - G(2)/M期呈剂量依赖性积累。即使在低剂量下,RHPS4诱导的细胞周期改变也是不可逆的,并且细胞死于凋亡。在高RHPS4浓度下,凋亡伴随着衰老表型的诱导:细胞体积大、细胞质空泡化和β - 半乳糖苷酶活性。RHPS4的短期生物学活性不是由端粒缩短引起的,而是与端粒功能障碍有关,表现为端粒融合、多核细胞的存在以及末期桥的典型图像。总之,我们的结果表明,G - 四链体配体RHPS4可以通过其引起端粒封端改变的能力以不依赖端粒长度的方式发挥作用。